Selected Publications
List of Books
(1) Ruzhu Wang, Liwei Wang, Jingyi Wu. Adsorption Refrigeration Technology: Theory and application, John Wiely & Sons Singapore Pte. Ltd. 2014, ISBN:978-1-118-19743-1
(2).R.Z. Wang, T.S. Ge., Advances in Solar Heating and Cooling., Elsevier-Woodhead Publishing publications, 2016, ISBN: 978-0-08-100301-5
(3). R.Z. Wang, X.Q. Zhai. Handbook of Energy Systems in Green Building, Springer,2018, ISBN:978-3-662-49088-4
(4) Wang Ruzhu, Wang Liwei, Wu Jingyi. Adsorption Refrigeration: Theorey and Applications. Science Press, Beijing, Sept. 2007. ISBN978-7-03-019886-0 (in Chinese)
(5) Wang Ruzhu, Dai Yanjun. Solar Refrigeration, Chemical Industry PressBeijing , Jan. 2007. ISBN7-5025-9317-9 (in Chinese)
(6) Wang Ruzhu, Ding Guoliang. Advanced Refrigeration and Air Conditioning Technology. Science Press, Beijing, Sept.2002. ISBN7-03-010677-6 (in Chinese)
(7) Wang Ruzhu (editor). Research and Development on Refrigeration. Science Press, Beijing , April 2007. ISBN978-7-03-018779-6 (in Chinese)
(8) Zhang Peng, Wang Ruzhu. Heat Transfer to Superfluid Helium. Science Press, Beijing, Jan. 2009. (in Chinese)
List of Text Books
(1) Wang Ruzhu et al. Refrigeration Principle and Technology. Science Press, Beijing, Aug. 2003. ISBN7-03-011342-X, popular in China, published 4 times. (in Chinese)
(2) Zhou Yuan, Wang Ruzhu. Refrigeration and Cryogenics, China Electric Power Press, Beijing, Nov. 2003 ISBN7-5083-1336-4 (in Chinese)
(3) Wang Ruzhu, Wang Rongshun. Cryogenic Systems, Shanghai Jiao Tong University Press. Dec. 2000. ISBN 7-313-02552-1 (in Chinese)
Publications in top journals:
1. Yaodong Tu,Ruzhu Wang*, Yannan Zhang, Jiayun Wang. Progress and Expectation of Atmospheric Water Harvesting. Joule (2018). 2, 1452-1475.
https://doi.org/10.1016/j.joule.2018.07.015
2. Bangjun Li, Lingji Hua, Yaodong Tu, Ruzhu Wang*. A Full-Solid-State Humidity Pump for Localized Humidity Control. Joule (2019)3, 1427-1436.
https://doi.org/10.1016/j.joule.2019.03.018
3. Si Wu, Tingxian Li,* Zhen Tong, Jingwei Chao, Tianyao Zhai, Jiaxing Xu, Taisen Yan, Minqiang Wu, Zhenyuan Xu, Hua Bao, Tao Deng,* and Ruzhu Wang*.. High-Performance Thermally Conductive Phase Change Composites by Large-Size Oriented Graphite Sheets for Scalable Thermal Energy Harvesting. Adv Mater (2019)31, 1905099.
https://doi.org/10.1002/adma.201905099
4. Biye Cao, Yaodong Tu, Ruzhu Wang*. A Moisture-Penetrating Humidity Pump Directly Powered by One-Sun Illumination. iScience (2019) 15, 502-513. https://doi.org/10.1016/j.isci.2019.05.013
5. Chenxi Wang, Lingji Hua,Hongzhi Yan, Bangjun Li, Yaodong Tu, Ruzhu Wang*.(2020). A Thermal Management Strategy for Electronic Devices Based on Moisture Sorption-Desorption Processes, Joule (2019), 4, 435–447,
https://doi.org/10.1016/j.joule.2019.12.005.
6. Yannan Zhang , Haohui Dong , Ruzhu Wang *, Penghui Feng. Air humidity assisted sorption thermal battery governed by reaction wave model. Energy Storage Materials (2020) 27: 9–16
https://doi.org/10.1016/j.ensm.2020.01.012
7. Jiaxing Xu, Tingxian Li,* Jingwei Chao, Si Wu, Taisen Yan, Wenchen Li, Biye Cao, and Ruzhu Wang* (2020). Efficient Solar-Driven Water Harvesting from Arid Air with Metal–Organic Frameworks Modified by Hygroscopic Salt. Angew. Chem. Int. Ed. (2020), 59, 2–11.
https://doi.org/10.1002/anie.201915170
8. Zhenyuan Xu, Lenan Zhang, Lin Zhao, Bangjun Li, Bikram Bhatia, Chenxi Wang, Kyle L. Wilke, Youngsup Song, Omar Labban,John H. Lienhard, Ruzhu Wang * and Evelyn N. Wang *. Ultrahigh-efficiency desalination via a thermally-localized multistage solar still. Energy & Environmental Science, (2020), https://doi.org/10.1039/c9ee04122b
9. Yannan Zhang, Ruzhu Wang*. Sorption Thermal Energy Storage: Concept, Process, Applications and Perspectives. Energy Storage Materials 27 (2020) 352–369.
https://doi.org/10.1016/j.ensm.2020.02.024
10. Akram Entezari, Mojtaba Ejeian, Ruzhu Wang*. Super atmospheric water harvesting hydrogel with alginate chains modified with binary salts. ACS Materials Letters, 4(2020) https://doi.org/10.1021/acsmaterialslett.9b00315
11. Xuancan Zhu, Tianshu Ge,* Fan Yang,Meng Lyu, Chunping Chen, Dermot O’Hare, and Ruzhu Wang*. Efficient CO2 Capture from Ambient Air with Amine-Functionalized Mg–Al Mixed Metal Oxides. Journal of Materials Chemistry A, DOI: 10.1039/d0ta05079b
Updated Research Papers List could be easily found @ https://orcid.org/0000-0003-3586-5728
[1] Z.S. Lu, R.Z. Wang, Z.Z. Xia, X.R. Lu, C.B. Yang, Y.C. Ma, G.B. Ma. Study of a novel solar adsorption cooling system and a solar absorption cooling system with new CPC collectors, Renewable Energy, 2013, 50: 299-306. Times Cited: 6
[2] J.K. Kiplagat, R.Z. Wang, R.G. Oliveira, T.X. Li, M. Liang. Experimental study on the effects of the operation conditions on the performance of a chemisorption air conditioner powered by low grade heat, Applied Energy, 2013, 103: 571-580. Times Cited: 0
[3] Y.L. Yin, Z.P. Song, Y. Li, R.Z. Wang, X.Q. Zhai. Experimental investigation of a mini-type solar absorption cooling system under different cooling modes. Energy and Buildings, 2012, 47: 131-138. Times Cited: 5
[4] Z.S. Lu, L.W. Wang, R.Z. Wang. Experimental analysis of an adsorption refrigerator with mass and heat-pipe heat recovery process. Energy Conversion and Management, 2012, 53(1): 291-297. Times Cited: 1
[5] S. Du, R.Z. Wang, P. Lin, Z.Z. Xu, Q.W. Pan, S.C. Xu. Experimental studies on an air-cooled two-stage NH3-H2O solar absorption air-conditioning prototype. Energy, 2012,45(1): 581-587. Times Cited: 2
[6] T.X. Li, R.Z. Wang, J.K. Kiplagat, L. Ma. Performance analysis of a multi-mode thermochemical sorption refrigeration system for solar-powered cooling. International Journal of Refrigeration, 212, 35(3): 532-542. Times Cited: 1
[7] L.X. Gong, R.Z. Wang, Z.Z. Xia, Z.S. Lu. Experimental study on an adsorption chiller employing lithium chloride in silica gel and methanol,International Journal of Refrigeration, 2012,35(7):1950-1957 Times Cited: 1
[8] S. Deng, Y.J. Dai, R.Z. Wang.Performance study on hybrid solar-assisted CO2 heat pump system based on the energy balance of net zero energy apartment , Energy and Buildings, 2012, 54: 337-349. Times Cited: 2
[9] C. Li, R.Z. Wang.Building integrated energy storage opportunities in China, Renewable and Sustainable Energy Reviews, 2012, 16(8):6191-6211. Times Cited: 1
[10] W.T. Xie, Y.J. Dai, R.Z. Wang.Theoretical and experimental analysis on efficiency factors and heat removal factors of Fresnel lens solar collector using different cavity receivers. Solar Energy, 2012, 86(9): 2458-2471. Times Cited: 1
[11] R.Z. Wang, X. Yu, T.S. Ge, T.X. Li .The present and future of residential refrigeration, power generation and energy storage , Applied Thermal Engineering Volume 53, Issue 2, 2 May 2013, Pages 256270 Times Cited: 7
[12] H.S. Bao, R.Z. Wang, R.G. Oliveira, T.X. Li. Resorption system for cold storage and long-distance refrigeration,Applied Energy, 93:479-487. Times Cited: 0
[13] Z.S. Lu, R.Z. Wang, Z.Z. Xia, Q.B. Wu, Y.M. Sun, Z.Y. Chen. An analysis of the performance of a novel solar silica gelwater adsorption air conditioning, Applied Thermal Engineering, 2011, 31(17-18): 3636-3642.H.S. Bao, R.G. Oliveira, R.Z. Wang, L.W. Wang, Z.W. Ma. Working pairs for resorption refrigerator, Applied Thermal Engineering, 2011, 31(14-15): 3015-3021. Times Cited: 2
[14] L.X. Gong, R.Z. Wang, Z.Z. Xia, C.J. Chen. Design and performance prediction of a new generation adsorption chiller using composite adsorbent , Energy Conversion and Management, 2011, 52(6): 2345-2350. Times Cited: 8
[15] J. Xu, R.G. Oliveira, R.Z. Wang. Resorption system with simultaneous heat and cold production, International Journal of Refrigeration, 2011, 34(5): 1262-1267. Times Cited: 1
[16] T.S. Ge, Y.J. Dai, R.Z. Wang. Performance study of silica gel coated fin-tube heat exchanger cooling system based on a developed mathematical model, Energy Conversion and Management, 2011, 52(6): 2329-2338. Times Cited: 6
[17] J. Deng, R.Z. Wang, G.Y. Han. A review of thermally activated cooling technologies for combined cooling, heating and power systems , Progress in Energy and Combustion Science, 2011, 37(2): 172-203. Times Cited: 27
[18] Z.Z. Xia, C.J. Chen, R.Z. Wang. Numerical simulation of a closed wet cooling tower with novel design , International Journal of Heat and Mass Transfer, 2011, 54(11-12): 2367-2374. Times Cited: 3
[19] M.L. Jiang, J.Y. Wu, R.Z. Wang.Research on refrigerant flow characteristics and performance of a multi-functional heat pump system, Energy Conversion and Management, 2011, 52(6): 2323-2328. Times Cited: 0
[20] P. Lin, R.Z. Wang, Z.Z. Xia. Numerical investigation of a two-stage air-cooled absorption refrigeration system for solar cooling: Cycle analysis and absorption cooling performances, Renewable Energy, 2011, 36(5): 1401-1412. Times Cited: 1
[21] W.T. Xie, Y.J. Dai, R.Z. Wang. Numerical and experimental analysis of a point focus solar collector using high concentration imaging PMMA Fresnel lens, Energy Conversion and Management, 2011, 52(6): 2417-2426. Times Cited: 8
[22] J.J. Guo, J.Y. Wu, R.Z. Wang, S. Li. Experimental research and operation optimization of an air-source heat pump water heater,Applied Energy, 2011, 88( 11): 4128-4138. Times Cited: 3
[23] X. Yu, R.Z. Wang, X.Q. Zhai. Year round experimental study on a constant temperature and humidity air-conditioning system driven by ground source heat pump, Energy, 2011, 36(2): 1309-1318. Times Cited: 13
[24] D.L. Zhao, Y. Li, Y.J. Dai, R.Z. Wang. Optimal study of a solar air heating system with pebble bed energy storage, Energy Conversion and Management, 2011, 52(6): 2392-2400. Times Cited: 6
[25] T.X. Li, R.Z. Wang, J.K. Kiplagat, H. Chen, L.W. Wang. A new target-oriented methodology of decreasing the regeneration temperature of solidgas thermochemical sorption refrigeration system driven by low-grade thermal energy, International Journal of Heat and Mass Transfer, 2011, 54(21-22): 4719-4729. Times Cited: 8
[26] H.S. Bao, R.Z. Wang, L.W. Wang. A resorption refrigerator driven by low grade thermal energy, Energy Conversion and Management, 2011, 52(6): 2339-2344. Times Cited: 2
[27] R.Z. Wang, Z.Z. Xia, L.W. Wang, Z.S. Lu, S.L. Li, T.X. Li, J.Y. Wu, S. He. Heat transfer design in adsorption refrigeration systems for efficient use of low-grade thermal energy, Energy, 2011, 36(9): 5425-5439. Times Cited: 10
[28] L. Xu, R.Z. Wang, T.X. Li, L.W. Wang.Experimental study on the performance of double-effect and double-way thermochemical sorption refrigeration cycle, Applied Thermal Engineering, 2011, 31(17-18): 3658-3663. Times Cited: 1
[29] L. Xu, R.Z. Wang, T.X. Li, L.W. Wang. Experimental study on a combined double-way chemisorption refrigeration system, International Journal of Refrigeration, 2011, 34(4): 914-921. Times Cited: 0
[30] S. Deng, Y.J. Dai, R.Z. Wang, X.Q. Zhai. Case study of green energy system design for a multi-function building in campus, Sustainable Cities and Society, 2011, 1(3): 152-163. Times Cited: 5
[31] J.J. Guo, J.Y. Wu, R.Z. Wang.A new approach to energy consumption prediction of domestic heat pump water heater based on grey system theory, Energy and Buildings, 2011, 43(6): 1273-1279. Times Cited: 3
[32] S. Deng, Y.J. Dai, R.Z. Wang, T. Matsuura, Y. Yasui. Comparison study on performance of a hybrid solar-assisted CO2 heat pump, Applied Thermal Engineering, 2011, 31(17-18): 3696-3705. Times Cited: 1
[33] C. Wang, P. Zhang, R.Z. Wang. Performance of solidgas reaction heat transformer system with gas valve control .Chemical Engineering Science, 2010, 65(10):2910-2920. Times Cited: 2
[34] C.J. Chen, R.Z. Wang, Z.Z. Xia, J.K. Kiplagat, Z.S. Lu. Study on a compact silica gelwater adsorption chiller without vacuum valves: Design and experimental study, Applied Energy, 2010, 87(8): 2673-2681. Times Cited: 16
[35] C.J. Chen, R.Z. Wang, Z.Z. Xia, J.K. Kiplagat. Study on a silica gelwater adsorption chiller integrated with a closed wet cooling tower. International Journal of Thermal Sciences, 2010, 49(3): 611-620. Times Cited: 6
[36] H. S. Bao, R.G Oliveira, R.Z. Wang, L.W. Wang. The choice of low temperature salt for a resorption refrigerator. Industrial & Engineering Chemistry Research 49(2010) 4897-4903. Times Cited: 4
[37] H. Zhai, Y.J. Dai, J.Y. Wu, R.Z. Wang, L.Y. Zhang. Experimental investigation and analysis on a concentrating solar collector using linear Fresnel lens. Energy Conversion and Management, 2010, 51(1):48-55. Times Cited: 11
[38] J.K. Kiplagat, R.Z. Wang, R.G. Oliveira, T.X. Li. Lithium chloride Expanded graphite composite sorbent for solar powered ice maker. Solar Energy, 2010, 84(9):1587-1594 Times Cited: 2
[39] L. X. Gong, R. Z. Wang, Z. Z. Xia and C. J. Chen. Adsorption Equilibrium of Water on a Composite Adsorbent Employing Lithium Chloride in Silica Gel. J. Chem. Eng. Data, 2010, 55 (8):29202923 Times Cited: 7
[40] L. Xia, P. Zhang, R.Z. Wang. Numerical heat transfer analysis of the packed bed latent heat storage system based on an effective packed bed model. Energy, 2010, 35(5):2022-2032. Times Cited: 9
[41] L. Xia, P. Zhang, R.Z. Wang. Preparation and thermal characterization of expanded graphite/paraffin composite phase change material. Carbon, 2010, 48(9): 2538-2548. Times Cited: 25
[42] R.Z. Wang, X.Q. Zhai. Development of solar thermal technologies in China . Energy, 2010, 35(11):4407-4416. Times Cited: 11
[43] T.S. Ge, F. Ziegler, R.Z. Wang, H. Wang Performance comparison between a solar driven rotary desiccant cooling system and conventional vapor compression system (performance study of desiccant cooling). Applied Thermal Engineering, 2010, 30(6):724-731. Times Cited: 7
[44] T.S. Ge, F. Ziegler, R.Z. Wang. A mathematical model for predicting the performance of a compound desiccant wheel (A model of compound desiccant wheel). Applied Thermal Engineering, 2010, 30(8):1005-1015. Times Cited: 9
[45] T.S. Ge, Y.J. Dai, R.Z. Wang, Z.Z. Peng. Experimental comparison and analysis on silica gel and polymer coated fin-tube heat exchangers. Energy, 2010, 35(7): 2893-2900. Times Cited: 10
[46] T.X. Li, R.Z. Wang, J. K. Kiplagat, L.W. Wang. Performance improvement of a combined double-way sorption refrigeration cycle using re-heating process. AIChE Journal, 2010, 56 (2): 477-484. Times Cited: 2
[47] T.X. Li, R.Z. Wang, J.K. Kiplagat, H. Chen. Experimental study and comparison of thermochemical resorption refrigeration cycle and adsorption refrigeration cycle. Chemical Engineering Science, 2010, 65(14):4222-4230. Times Cited: 0
[48] X. Yu, R.Z. Wang, X.Q. Zhai. Year round experimental study on a constant temperature and humidity air-conditioning system driven by ground source heat pump. Energy, Volume: 36 Issue: 2 Pages: 1309-1318 2011 Times Cited: 13
[49] X. Yu, X.Q. Zhai, R.Z. Wang. Design and performance of a constant temperature and humidity air-conditioning system driven by ground source heat pumps in winter. Energy Conversion and Management, 2010, 51(11): 2162-2168. Times Cited: 2
[50] X.Q. Zhai, R.Z. Wang. Experimental investigation and performance analysis on a solar adsorption cooling system with/without heat storage. Applied Energy, 2010, 87(3): 824-835 Times Cited: 15
[51] Z.Q. Xiong, Y.J. Dai, R.Z. Wang. Development of a novel two-stage liquid desiccant dehumidification system assisted by CaCl2 solution using exergy analysis method. Applied Energy, 2010, 87(5):1495-1504. Times Cited: 16
[52] P. Zhang, Y. Huang, and R. Z. Wang. Flow and Heat Transfer Characteristics of Supercritical Helium for Magnet Cooling. IEEE Transactions on Applied Superconductivity, (2010) V20(3) 2054-2057 Times Cited: 0
[53] TingXian Li, RuZhu Wang and LiWei Wang. High-efficient thermochemical sorption refrigeration driven by low-grade thermal energy, Chinese Science Bulletin, 2009, 54(6): 885-905. Times Cited: 1
[54] Qiang Ma, RuZhu Wang, LinGai Luo, ZaiZhong Xia and Peng Lin. Transportation of low-grade thermal energy over long distance by ammonia-water absorption, Chinese Science Bulletin, 2009, 54(6): 948-957 Times Cited: 2
[55] ZhaoPei Song, RuZhu Wang and XiaoQiangZhai. Solar-driven high temperature radiant cooling, Chinese Science Bulletin, 2009, 54(6): 978-985. Times Cited: 2
[56] R.Z. Wang, T. S. Ge, C. J. Chen, Q. Ma, Z. Q. Xiong. Solar sorption cooling systems for residential applications: options and guidelines, International Journal of Refrigeration, 2009, 32: 638-660. Times Cited: 29
[57] Z.Z. Xia, G.Z. Yang, R.Z. Wang. Capillary-assisted flow and evaporation inside circumferential rectangular micro groove, International Journal of Heat and Mass Transfer, 2009, 52(3-4): 952-961. Times Cited: 9
[58] L.W. Wang, R.Z. Wang, R.G. Oliveira. A review on adsorption working pairs for refrigeration, Renewable and Sustainable Energy Reviews, 2009, 13(3): 518-534. Times Cited: 51
[59] L.W. Wang, H.S. Bao, R.Z. Wang.A comparison of the performances of adsorption and resorption refrigeration systems powered by the low grade heat, Renewable Energy, 2009, 34(11): 2373-2379 Times Cited: 4
[60] R.G. Oliveira, R.Z. Wang, J.K. Kiplagat, C.Y. Wang.Novel composite sorbent for resorption systems and for chemisorption air conditioners driven by low generation temperature, Renewable Energy, 2009, 34(12): 2757-2764 Times Cited: 8
[61] X.Q. Zhai, R.Z. Wang.A review for absorbtion and adsorbtion solar cooling systems in China, Renewable and Sustainable Energy Reviews, 2009, 13(6-7): 1523-1531. Times Cited: 20
[62] X.Q. Zhai, R.Z. Wang.Experimental investigation and theoretical analysis of the solar adsorption cooling system in a green building, Applied Thermal Engineering, 2009, 29(1): 17-27. Times Cited: 7
[63] T.X. Li, R.Z. Wang, J.K. Kiplagat, L.W. Wang, R.G. Oliveira. A conceptual design and performance analysis of a triple-effect solidgas thermochemical sorption refrigeration system with internal heat recovery, Chemical Engineering Science, 2009, 64(14): 3376-3384. Times Cited: 3
[64] S.L. Qi, P. Zhang, R.Z. Wang, L.X. Xu. Erratum to ¨Flow boiling of liquid nitrogen in micro-tubes: Part II Heat transfer characteristics and critical heat flux〃 [Int. J. Heat and Mass Transfer 50 (2007) 50175030], International Journal of Heat and Mass Transfer, 2009, 52(3-4): 1080. Times Cited: 36
[65] T.X. Li, R.Z. Wang, R.G. Oliveira, J.K. Kiplagat, L.W. Wang. A combined double-way chemisorption refrigeration cycle based on adsorption and resorption processes, International Journal of Refrigeration, 2009, 32(1): 47-57. Times Cited: 13
[66] T.X. Li, R.Z. Wang, L.W. Wang, J.K. Kiplagat. Study on the heat transfer and sorption characteristics of a consolidated composite sorbent for solar-powered thermochemical cooling systems, Solar Energy, 2009, 83(9): 1742-1755. Times Cited: 1
[67] T.S. Ge, Y. Li, R.Z. Wang, Y.J. Dai. Experimental study on a two-stage rotary desiccant cooling system, International Journal of Refrigeration, 2009, 32(3): 498-508. Times Cited: 25
[68] Z.Q. Xiong, Y.J. Dai, R.Z. Wang. Investigation on a two-stage solar liquid-desiccant (LiBr) dehumidification system assisted by CaCl2 solution, Applied Thermal Engineering, 2009, 29(5-6): 1209-1215 Times Cited: 9
[69] Y.M. Han, R.Z. Wang, Y.J. Dai. Thermal stratification within the water tank, Renewable and Sustainable Energy Reviews, 2009, 13(5): 1014-1026. Times Cited: 31
[70] T.X. Li, R.Z. Wang, J.K. Kiplagat, L.W. Wang. Performance study of a consolidated manganese chlorideexpanded graphite compound for sorption deep-freezing processes, Applied Energy, 2009, 86(7-8): 1201-1209. Times Cited: 2
[71] Z.Z. Xia, R.Z. Wang, D.C. Wang, Y.L. Liu, J.Y. Wu, C.J. Chen. Development and comparison of two-bed silica gelwater adsorption chillers driven by low-grade heat source, International Journal of Thermal Sciences, 2009, 48(5): 1017-1025. Times Cited: 9
[72] P. Lin, R.Z. Wang, Z.Z. Xia, Q. Ma. Experimental investigation on heat transportation over long distance by ammoniawater absorption cycle, Energy Conversion and Management, 2009, 50(9): 2331-2339. Times Cited: 1
[73] T.X. Li, R.Z. Wang, J.K. Kiplagat, L.W. Wang and R.G. Oliveira. Thermodynamic study of a combined double-way solidgas thermochemical sorption refrigeration cycle, International Journal of Refrigeration , 2009, 32: 1570-1578 Times Cited: 3
[74] Ruzhu Wang. Solar air conditioning researches and demonstrations in China. Engineering Sciences, 2009, 7(2):91-96. Times Cited: 0
[75] K. Daou, R. Z. Wang, G. Z. Yang, Z. Z. Xia. Theoretical comparison of the refrigerating performances of a CaCl2 impregnated composite adsorbent to those of the host silica gel. International Journal of Thermal Sciences, 2008, 47(1):68-75. Times Cited: 10
[76] J. Deng, R. Z. Wang, J. Y. Wu, G. Y. Han, D. W. Wu, S. Li. Exergy cost analysis of a micro-trigeneration system based on the structural theory of thermoeconomics. Energy, 2008, 33(9):1417-1426. Times Cited: 16
[77] T. S. Ge, Y. Li, R. Z. Wang, Y. J. Dai. A review of the mathematical models for predicting rotary desiccant wheel. Renewable & Sustainable Energy Reviews, 2008, 12(6):1485-1528. Times Cited: 27
[78] T.S.Ge, Y.J.Dai, R.Z. Wang, Y.Li, Experimental investigation on a one-rotor two stage desiccant cooling system, Energy, 2008(33):1807-1815 Times Cited: 33
[79] Y. H. Huang, P. Zhang, R. Z. Wang. Study on surface tension of fluid helium three. International Journal of Thermophysics, 2008, 29(4):1321-1327. Times Cited:1
[80] S. Li, J. Y. Wu, R. Z. Wang, Y. Huangfu. Investigation of transient behavior of a novel thermal management controller. Applied Thermal Engineering, 2008, 28(8-9):824-834. Times Cited: 0
[81] T. X. Li, R. Z. Wang, L. W. Wang, Z. S. Lu. Experimental investigation of an innovative dual-mode chemisorption refrigeration system based on multifunction heat pipes. International Journal of Refrigeration, 2008, 31(6):1104-1112. Times Cited: 1
[82] T. X. Li, R. Z. Wang, L. W. Wang, Z. S. Lu. Experimental study on an innovative multifunction heat pipe type heat recovery two-stage sorption refrigeration system. Energy Conversion and Management, 2008, 49(10):2505-2512. Times Cited: 4
[83] T. X. Li, R. Z. Wang, L. W. Wang, Z. S. Lu, J. Y. Wu. Influence of mass recovery on the performance of a heat pipe type ammonia sorption refrigeration system using CaCl2/activated carbon as compound adsorbent. Applied Thermal Engineering, 2008, 28(13):1638-1646. Times Cited: 2
[84] R. G. Oliveira, R. Z. Wang. Study of a non-isothermal, non-isobaric consolidated reactive bed for chemisorption icemakers. Chemical Engineering Journal, 2008, 138(1-3):416-424. Times Cited: 3
[85] R. G. Oliveira, R. Z. Wang, T. X. Li. Transient analysis of a chemisorption air conditioning system operating under different kinds of cycle. Industrial & Engineering Chemistry Research, 2008, 47(4):1102-1110. Times Cited: 7
[86] C. Wang, P. Zhang, R. Z. Wang. Investigation of solid-gas reaction heat transformer system with the consideration of multistep reactions. AIChE Journal, 2008, 54(9):2464-2478. Times Cited: 2
[87] L. W. Wang, R. Z. Wang, Z. Z. Xia, J. Y. Wu. Studies on heat pipe type adsorption ice maker for fishing boats. International Journal of Refrigeration 2008, 31(6):989-997. Times Cited: 4
[88] R. Z. Wang. Efficient adsorption refrigerators integrated with heat pipes. Applied Thermal Engineering, 2008, 28(4):317-326. Times Cited: 20
[89] Z. Z. Xia, G. Z. Yang, R. Z. Wang. Experimental investigation of capillary-assisted evaporation on the outside surface of horizontal tubes. International Journal of Heat and Mass Transfer, 2008, 51(15-16):4047-4054. Times Cited: 9
[90] X. Q. Zhai, R. Z. Wang. Experiences on solar heating and cooling in China. Renewable & Sustainable Energy Reviews, 2008, 12(4):1110-1128. Times Cited: 13
[91] X. Q. Zhai, R. Z. Wang, Y. J. Dai, J. Y. Wu, Q. Ma. Experience on integration of solar thermal technologies with green buildings. Renewable Energy, 2008, 33(8):1904-1910. Times Cited: 8
[92] X. Q. Zhai, R. Z. Wang, J. Y. Wu, Y. J. Dai, Q. Ma. Design and performance of a solar-powered air-conditioning system in a green building. Applied Energy, 2008, 85(5):297-311. Times Cited: 24
[93] Y. P. Zhou, J. Y. Wu, R. Z. Wang, S. Shiochi, Y. M. Li. Simulation and experimental validation of the variable-refrigerant-volume (VRV) air-conditioning system in EnergyPlus. Energy and Buildings, 2008, 40(6):1041-1047. Times Cited: 24
[94] R.Z. Wang, Y. Li. Perspectives for natural working fluids in China. International Journal of Refrigeration, 2007, 30(4): 568-581 Times Cited: 13
[95] Y.W. Li, R.Z. Wang, J.Y. Wu and Y.X. Xu. Experimental performance analysis and optimization of a direct expansion solar-assisted heat pump water heater, Energy, 2007, 32(8): 1361-1374 Times Cited: 23
[96] Y. Huangfu, J.Y. Wu, R.Z. Wang, X.Q. Kong and B.H. Wei. Evaluation and analysis of novel micro-scale combined cooling, heating and power (MCCHP) system, Energy Conversion and Management, 2007, 48(5): 1703-1709 Times Cited: 19
[97] S.L. Qi, P. Zhang, R.Z. Wang and L.X. Xu. Single-phase pressure drop and heat transfer characteristics of turbulent liquid nitrogen flow in micro-tubes, International Journal of Heat and Mass Transfer, 2007, 50( 9-10): 1993-2001 Times Cited: 19
[98] J. Di, J.Y. Wu, Z.Z. Xia and R.Z. Wang. Theoretical and experimental study on characteristics of a novel silica gelwater chiller under the conditions of variable heat source temperature, International Journal of Refrigeration, 2007, 30(3): 515-526 Times Cited: 21
[99] H.L. Luo, R.Z. Wang, Y.J. Dai, J.Y. Wu, J.M. Shen and B.B. Zhang. An efficient solar-powered adsorption chiller and its application in low-temperature grain storage, Solar Energy, 2007,81(5): 607-613 Times Cited: 16
[100] J. Zhang, R.Z. Wang and J.Y. Wu. System optimization and experimental research on air source heat pump water heater, Applied Thermal Engineering, 2007, 27(5-6): 1029-1035 Times Cited: 11
[101] C.J. Chen, R.Z. Wang, L.W. Wang and Z.S. Lu. Studies on cycle characteristics and application of split heat pipe adsorption ice maker, Energy Conversion and Management, 2007, 48(4): 1106-1112 Times Cited: 7
[102] C.X. Jia, Y.J. Dai, J.Y. Wu and R.Z. Wang. Use of compound desiccant to develop high performance desiccant cooling system, International Journal of Refrigeration, 2007, 30(2): 345-353. Times Cited: 47
[103] R.G. Oliveira and R.Z. Wang. A consolidated calcium chloride-expanded graphite compound for use in sorption refrigeration systems, Carbon, 2007, 45(2): 390-396 Times Cited: 24
[104] Y. Huangfu, J.Y. Wu, R.Z. Wang and Z.Z. Xia. Experimental investigation of adsorption chiller for Micro-scale BCHP system application, Energy and Buildings, 2007, 39(2): 120-127 Times Cited: 7
[105] Y.P. Zhou, J.Y. Wu, R.Z. Wang and S. Shiochi. Energy simulation in the variable refrigerant flow air-conditioning system under cooling conditions, Energy and Buildings, 2007, 39(2): 212-220 Times Cited: 23
[106] K. Daou, R.Z. Wang, Z.Z. Xia and G.Z. Yang. Experimental comparison of the sorption and refrigerating performances of a CaCl2 impregnated composite adsorbent and those of the host silica gel, International Journal of Refrigeration, 2007, 30(1): 68-75. Times Cited: 8
[107] Z.S. Lu, R.Z. Wang, T.X. Li, L.W. Wang and C.J. Chen. Experimental investigation of a novel multifunction heat pipe solid sorption icemaker for fishing boats using CaCl2/activated carbon compoundammonia, International Journal of Refrigeration, 2007,30(1): 76-85 Times Cited: 11
[108] R.G. Oliveira, R.Z. Wang and C. Wang. Evaluation of the cooling performance of a consolidated expanded graphitecalcium chloride reactive bed for chemisorption icemaker, International Journal of Refrigeration, 2007, 30(1): 103-112. Times Cited: 17
[109] X.Q. Zhai, R.Z. Wang, Y.J. Dai, J.Y. Wu, Y.X. Xu and Q. Ma. Solar integrated energy system for a green building, Energy and Buildings, 2007, 39(8): 985-993. Times Cited: 35
[110] Y.W. Li, R.Z. Wang, J.Y. Wu and Y.X. Xu. Experimental performance analysis on a direct-expansion solar-assisted heat pump water heater, Applied Thermal Engineering, 2007,27(17-18): 2858-2868 Times Cited: 26
[111] Y.M. Han, R.Z. Wang, Y.J. Dai, A.H. Xiong. Studies on the light permeance characteristic of a Fresnel lens group applied in high concentration solar energy. Journal of Optics A:Pure and Applied Optics. 2007, 9: 988-997. Times Cited: 3
[112] T.X. Li, R.Z. Wang, L.W. Wang, Z.S. Lu and C.J. Chen. Performance study of a high efficient multifunction heat pipe type adsorption ice making system with novel mass and heat recovery processes, International Journal of Thermal Sciences, 2007, 46:1267-1274. Times Cited: 10
[113] Y. Huangfu, J.Y. Wu, R.Z. Wang, Z.Z. Xia and S. Li . Development of an experimental prototype of an integrated thermal management controller for internal-combustion -engine-based cogeneration systems, Applied Energy, 2007,84(12): 1356-1373. Times Cited: 8
[114] T.X. Li, R.Z. Wang, R. G. Oliveira, L.W. Wang. Performance analysis of an innovative multimode, multisalt and multieffect chemisorption refrigeration system, AIChE Journal, 2007, 53(12): 3222-3230. Times Cited: 21
[115] S. Li, J.Y. Wu, R.Z. Wang and Y. Huangfu.Study of heat and mass transfer in integrated thermal management controller (ITMC) employed in waste heat recovery application, Energy Conversion and Management, 2007, 48(12): 3074-3083 Times Cited: 0
[116] Y.P. Zhou, J.Y. Wu and R.Z. Wang. Performance of energy recovery ventilator with various weathers and temperature set-points, Energy and Buildings, 2007, 39(12): 1202-1210. Times Cited: 16
[117] S. L. Qi, P. Zhang, R. Z. Wang, L. X. Xu, Flow boiling of liquid nitrogen in micro-tubes: Part I - the onset of nucleate boiling, two-phase flow instability and two-phase flow pressure drop. International Journal of Heat and Mass Transfer, 2007 V50(25-26): 4999-5016. Times Cited: 23
[118] P. Zhang, C. Wang, R. Z. Wang, Composite reactive block for heat transformer system and improvement of system performance. Journal of Chemical Engineering of Japan. 2007, V40(13) Times Cited: 0
[119] L.W. Wang, R.Z. Wang, J.Y. Wu, Y.X. Xu and S.G. Wang. Design, simulation and performance of a waste heat driven adsorption ice maker for fishing boat, Energy, 2006,31( 2-3):244-259 Times Cited: 8
[120] Lu Zisheng, Wang Ruzhu , Wang Liwei and Chen Chuanjuan. A study on multifunction heat pipe type high efficient adsorption refrigerator using compound adsorbent-ammonia, Chinese Science Bulletin2006512239-242. Times Cited: 2
[121] Lu, Z.S.; Wang, R.Z.; Wang, L.W.; Chen, C.J. Performance analysis of an adsorption refrigerator using activated carbon in a compound adsorbent. Carbon 2006, 44(4): 747-752 Times Cited: 26
[122] Times Cited: 26 Daou, K.; Wang, R.Z.; Xia, Z.Z. Desiccant cooling air conditioning: a review, Renewable and Sustainable Energy Reviews, 2006,10(2): 55-77 Times Cited: 80
[123] Daou, K.; Wang, R.Z.; Xia, Z.Z. Development of a new synthesized adsorbent for refrigeration and air conditioning applications. Applied Thermal Engineering, 2006,26(1):56-65 Times Cited: 20
[124] Q. Ma, R.Z. Wang, Y.J. Dai, X.Q. Zhai. Performance analysis on a hybrid air-conditioning system of a green building, Energy & Buildings, 2006, 38(5): 447-453. Times Cited: 28
[125] H.L. Luo, Y.J. Dai, R.Z. Wang, J.Y. Wu, Y.X. Xu and J.M. Shen. Experimental investigation of a solar adsorption chiller used for grain depot cooling, Applied Thermal Engineering, 2006, 26(11-12): 1218-1225 Times Cited: 12
[126] L.W. Wang, R.Z. Wang, Z.S. Lu, Y.X. Xu and J.Y. Wu. Split heat pipe type compound adsorption ice making test unit for fishing boats,International Journal of Refrigeration, 2006, 29(3): 456-468. Times Cited: 15
[127] K. Wang, J.Y. Wu, R.Z. Wang and L.W. Wang. Composite adsorbent of CaCl2 and expanded graphite for adsorption ice maker on fishing boats, International Journal of Refrigeration, 2006, 29(3): 199-210. Times Cited: 31
[128] K. Wang, J.Y. Wu, R.Z. Wang, L.W. Wang. Effective thermal conductivity of expanded graphite-CaCl2 composite adsorbent for chemical adsorption chillers. Energy Conversion and Management, 2006, 47(13 -14): 1902-1912 Times Cited: 19
[129] L.W. Wang, R.Z. Wang, Z.S. Lu, C.J. Chen and J.Y. Wu. Comparison of the adsorption performance of compound adsorbent in a refrigeration cycle with and without mass recovery, Chemical Engineering Science, 2006,61(11): 3761-3770. Times Cited: 7
[130] P. Zhang, M. Murakami and R.Z. Wang. Study of the transient thermal wave heat transfer in a channel immersed in a bath of superfluid helium. International Journal of Heat and Mass Transfer, 2006, 49(7-8): 1384-1394. Times Cited: 7
[131] G.Z. Yang, Z.Z. Xia, R.Z. Wang, DaouKeletigui, D.C. Wang, Z.H. Dong and X. Yang. Research on a compact adsorption room air conditioner. Energy Conversion and Management, 2006,47(15-16):2167-2177. Times Cited: 11
[132] L.W. Wang, R.Z. Wang, Z.S. Lu and C.J. Chen. Studies on split heat pipe type adsorption ice-making test unit for fishing boats: Choice of heat pipe medium and experiments under unsteady heating sources .Energy Conversion and Management, 2006,47(15-16): 2081-2091. Times Cited: 7
[133] C.X. Jia, Y.J. Dai, J.Y. Wu and R.Z. Wang. Experimental comparison of two honeycombed desiccant wheels fabricated with silica gel and composite desiccant material .Energy Conversion and Management, 2006,47(15-16): 2523-2534. Times cited: 1
[134] C.X. Jia, Y.J. Dai, J.Y. Wu and R.Z. Wang. Analysis on a hybrid desiccant air-conditioning system , Applied Thermal Engineering, 2006, 26(17-18): 2393-2400 Times Cited: 24
[135] L.W. Wang, R.Z. Wang, Z.S. Lu, C.J. Chen, K. Wang and J.Y. Wu. The performance of two adsorption ice making test units using activated carbon and a carbon composite as adsorbents , Carbon, 2006, 44(13): 2671-2680 Times Cited: 22
[136] Y.H. Kuang and R.Z. Wang. Performance of a multi-functional direct-expansion solar assisted heat pump system , Solar Energy, 2006, 80( 7): 795-803 Times Cited: 32
[137] R.Z. Wang and R.G. Oliveira. Adsorption refrigerationAn efficient way to make good use of waste heat and solar energy , Progress in Energy and Combustion Science, 2006, 32(4): 424-458 Times Cited: 99
[138] D.W. Wu and R.Z. Wang. Combined cooling, heating and power: A review, Progress in Energy and Combustion Science, 2006, 32(5-6): 459-495 Times Cited: 135
[139] Liu, Y.L.; Wang, R.Z.; Xia, Z.Z.Experimental performance of a silica gel- water adsorption chiller.Applied Thermal Engineering , 2005, 25(2-3): 359-375. Times Cited: 27
[140] Wang, S.G.; Wang, R.Z.Recent developments of refrigeration technology in fishing vessels.Renewable Energy , 2005,30(4):589-600 Times Cited: 17
[141] Kong, X.Q.; Wang, R.Z.; Huang, X.H.Energy optimization model for a CCHP system with available gas turbines. Applied Thermal Engineering 2005,25(2-3): 377-391 Times Cited: 69
[142] X.Q. Zhai, Y.J. Dai and R.Z. Wang. Experimental investigation on air heating and natural ventilation of a solar air collector,Energy and Buildings, 2005, 37(4): 373-381. Times Cited: 12
[143] H.J. Hou, Z.F. Wang, R.Z. Wang and P.M. Wang. A new method for the measurement of solar collector time constant.Renewable Energy , 2005,30(6): 855-865. Times Cited: 2
[144] Zhai, X.Q.; Dai, Y.J.; Wang, R.Z.Comparison of heating and natural ventilation in a solar house induced by two roof solar collectors.Applied Thermal Engineering , 2005,25(5-6): 741-757. Times Cited: 15
[145] Liu, Y.L.; Wang, R.Z.; Xia, Z.Z.Experimental study on a continuous adsorption water chiller with novel design.International Journal of Refrigeration, 2005, 28(2): 218-230. Times Cited: 37
[146] S. Jiangzhou, R.Z. Wang, Y.Z. Lu, Y.X. Xu, J.Y. Wu. Experimental study on locomotive driver cabin adsorption air conditioning prototype machine. Energy Conversion and Management, 2005, 46(9-10): 1655-1665 Times Cited: 7
[147] Wang Liwei, Wang Ruzhu, Wu Jingyi, Wang Kai. Research on the chemical adsorption precursor state of CaCl2-NH3 for adsorption refrigeration. Science in China Ser.E, 2005,48(1):70-82. Times Cited: 4
[148] Wang Ruzhu, Wang Liwei. Adsorption refrigeration-green cooling driven by low grade thermal energy. Chinese Science Bulltin, 2005,50(3):193-204. Times Cited: 14
[149] L.W. Wang, R.Z. Wang, J.Y. Wu, Z.Z. Xia, K. Wang. A new type adsorber for adsorption ice maker on fishing boats. Energy Conversion and Management, 2005, 46(13-14): 2301-2316. Times Cited: 9
[150] Sun, Z.G.; Wang, R.Z.; Sun, W.Z.Energetic efficiency of a gas-engine-driven cooling and heating system.Applied Thermal Engineering, 2004, 24(5-6):941-947. Times Cited: 23
[151] Li, M.; Sun, C.J.; Wang, R.Z.; Cai, W.D.Development of no valve solar ice maker.Applied Thermal Engineering , 2004, 24(5-6): 865-872. Times Cited: 17
[152] Y.Z. Lu, R.Z. Wang, S. Jianzhou, Y.X. Xu, J.Y. Wu. Practical experiments on an adsorption air conditioner powered by exhausted heat from a diesel locomotive. Applied Thermal Engineering , 2004, 24(7): 1051-1059. Times Cited: 18
[153] Y.Z.,Lu, R.Z. Wang,S. Jiangzhou, M. Zhang, Y.X. Xu, J.Y. Wu. Performance Investigation of an Exhausted-Heat-Powered Adsorption Air Conditioning System Used for Diesel Locomotive.Adsorption, 2004, 10(1):57-68 . Times Cited: 5
[154] L. W. Wang, R. Z. Wang,J. Y. Wu, K. Wang and S. G. Wang. Adsorption ice makers for fishing boats driven by the exhausted heat from diesel engine: the choice of adsorption pair. Energy Conversion and Management . 2004, Vol 45(13-14) :2043-2057 Times Cited: 21
[155] L.W. Wang, R. Z. Wang, J. Y. Wu, K. Wang. Compound adsorbent for adsorption ice maker on fishing boats International Journal of Refrigeration, 2004,27:401-408. Times Cited: 49
[156] X. Q. Kong, R. Z. Wang and X. H. Huang. Energy efficiency and economic feasibility of CCHP driven by stirling engine. Energy Conversion and Management ,2004, 45(9-10):1433-1442. Times Cited: 47
[157] ZHENG Xiaohong, LI Kejun, WANG Ruzhu, ZHAO Liping, Lisa. X. Xu, CHEN Yazhu, JIN Xinqiao, GU Bo, BAI Jingfeng,LIUHongmin& YE Xiaojiang. Experimental investigation of integrated air purifying technology for bioaerosol removal and inactivation in central air-conditioning system, Chinese Science Bulletin, 2004, 49(3):306-312. Times Cited: 2
[158] Wang Liwei, Wang Ruzhu, Wu Jingyi,Wang Kai. Adsorption performance of CaCl2-NH3 and its application on refrigeration, Science in China E, 2004,47(2):173-185. Times Cited: 11
[159] Y.L. Liu, R.Z. Wang. Performance prediction of a solar/gas driving double effect LiBr-H2O absorption system. Renewable Energy, 2004, 29(10): 1677-1695. Times Cited: 19
[160] C.H. Li, R.Z. Wang, Y.J. Dai. Simulation and economic analysis of a solar-powered adsorption refrigerator using an evacuated tube for thermal insulation, Renewable Energy, 2003,28(2):249-269 Times Cited: 3
[161] Y. H. Kuang,R.Z. Wang, L. Q. You. Experimental study on solar assisted heat pump system for heat supply. Energy Conversion and Management, 2003, 44(7): 1089-1098. Times Cited: 29
[162] Y.J. Dai, R.Z. Wang, L. Ni .Experimental investigation on a thermoelectric refrigerator driven by solar cells, Renewable Energy, 2003,28(6): 949-959 Times Cited: 15
[163] M. Li, R.Z. Wang.Heat and mass transfer in a flat plate solar solid adsorption refrigeration ice maker, Renewable Energy, 2003, 28 (4): 613-622 Times Cited: 16
[164] Y. Z. Lu, R. Z. Wang, M. Zhang and S. Jiangzhou. Adsorption cold storage system with zeolitewater working pair used for locomotive air conditioning. Energy Conversion and Management,2003, 44(10):1733-1743. Times Cited: 23
[165] P. Zhang, Y.X. Xu, R.Z. Wang, M. Murakami. Fractal study of the fluctuation characteristic in the calibration of the cryogenic thermocouples.Cryogenics, 2003,43(1): 53-58 Times Cited: 5
[166] S. Jiangzhou, R.Z. Wang, Y.Z. Lu, Y.X. Xu, J.Y. Wu, Z.H. Li. Locomotive driver cabin adsorption air-conditioner. Renewable Energy, 2003, 28(11): 1659-1670. Times Cited: 9
[167] Y.J. Dai, R.Z. Wang, L. Ni.Experimental investigation and analysis on a thermoelectric refrigerator driven by solar cells. Solar Energy Materials and Solar Cells,2003,77(4):377-391. Times Cited: 19
[168] Y.H. Kuang, K. Sumathy, R.Z. Wang. Study on a direct-expansion solar-assisted heat pump water heating system. International Journal of Energy Research, 2003,27:531-548. Times Cited: 35
[169] X.J.Zhang, Y.J.Dai, R.Z. Wang. A simulation study of heat and mass transfer in a honeycombed rotary desiccant dehumidifier. Applied Thermal Engineering,2003,23(8):989-1003 Times Cited: 61
[170] P. Zhang, M. Murakami, R.Z. Wang. Investigation of the chaotic pressure fluctuation induced by the vapor bubble oscillation in the film boiling of superfluid helium. Heat and Mass Transfer 39 (2003) 477482 Times Cited: 1
[171] Wang, L.W.; Wu, J.Y.; Wang, R.Z.; Xu, Y.X.; Wang, S.G.Experimental study of a solidified activated carbon-methanol adsorption ice makerApplied Thermal Engineering Volume: 23, Issue: 12, August, 2003, pp. 1453-1462 Times Cited: 23
[172] L. W. Wang, J. Y. Wu, R. Z. Wang, Y. X. Xu, S. G. Wang and X. R. Li.Study of the performance of activated carbonmethanol adsorption systems concerning heat and mass transfer . Applied Thermal Engineering,Volume 23, Issue 13 , September 2003, Pages 1605-1617 Times Cited: 23
[173] Li M, Wang RZ, Yun F, et al. An effective flat plate solar heating and cooling hybrid system. Adsorption Science and Technology, 2003, 21 (5): 487-499 Times Cited: 2
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[175] Liu YF, Wang RZ.Pore structure of new composite adsorbent SiO2 xH2O yCaCl2 with high uptake of water from air, SCI CHINA SER E 46 (5): 551-559 OCT 2003 Times Cited: 17
[176] Wu, J.Y.; Wang, R.Z.; Xu, Y.X. Experimental results on operating parameters influence for an adsorption refrigerator, International Journal of Thermal Sciences, 2002, 41(2): 137-145. Times Cited: 4
[177] Y.J.Dai, R.Z. Wang, H.F.Zhang, Parametric analysis to improve the performance of a solar desalination unit with humidification and dehumidification, DESALINATION, 2002, 142, 107-118. Times Cited: 14
[178] Wang, W.; Qu, T.F.; Wang, R.Z. Influence of degree of mass recovery and heat regeneration on adsorption refrigeration cycles. Energy Conversion and Management 2002,43(5): 733-741 Times Cited: 13
[179] Y.B.Gui,R.Z. Wang,W.Wang,J.Y.Wu,Y.X.Xu Performance modeling and testing on a heat-regenerative adsorptive reversible heat pump. Applied Thermal Engineering, 2002,22:309-320. Times Cited: 15
[180] J.Y.Wu,R.Z. Wang,Y.X.Xu. Influence of adsorption and desorption capacity on operating process for adsorption heat pump. Applied Thermal Engineering, 2002,22:471-476. Times Cited: 8
[181] Y.J. Dai, R.Z. Wang, Y.X. Xu. Study of a solar powered solid adsorption-desiccant cooling system used for grain storage. Renewable Energy, 2002, 25: 417-430 Times Cited: 17
[182] R.Z. Wang, M. Li, J.Y. Wu, Y.X. Xu. Research on a combined adsorption heating and cooling system. Applied Thermal Engineering,2002, 22(6): 603-617 Times Cited: 17
[183] X.J. Zhang, R.Z. Wang. Design and performance simulation of a new solar continuous solid adsorption refrigeration and heating hybrid system. Renewable Energy, 2002, 27(3): 401-405. Times Cited: 8
[184] S. Jiangzhou, R.Z. Wang, Y.Z. Lu, Y.X. Xu, J.Y. Wu. Experimental investigations on adsorption air-conditioner used in internal-combustion locomotive driver-cabin, Applied Thermal Engineering, 2002, 22(10):1153-1162. Times Cited: 13
[185] M. Li, R.Z. Wang, Y.X. Xu, J.Y. Wu, A.O. Dieng. Experimental study on dynamic performance analysis of a flat-plate solar solid-adsorption refrigeration for ice maker. Renewable Energy, 2002,27(2): 211-221. Times Cited: 38
[186] M. Li, R.Z. Wang. A study of the effects of collector and environment parameters on the performance of a solar powered solid adsorption refrigerator. Renewable Energy, 2002,27(3): 369-382. Times Cited: 24
[187] Zhang, X.J.; Wang, R.Z. A new combined adsorption-ejector refrigeration and heating hybrid system powered by solar energy. Applied Thermal Engineering, 2002,22(11): 1245-1258 Times Cited: 13
[188] J.Y. Wu, R.Z. Wang, Y.X. Xu. Dynamic analysis of heat recovery process for a continuous heat recovery adsorption heat pump. Energy Conversion and Management, 2002, 43(16): 2201-2211 Times Cited: 13
[189] Li, M.; Wang, R.Z.; Luo, H.L.; Wang, L.L.; Huang, H.B. Experiments of a solar flat plate hybrid system with heating and cooling . Applied Thermal Engineering , 2002, 22(13): 1445-1454 Times Cited: 17
[190] R.Z. Wang, J. Y. Wu, Y. X. Xu, W. Wang. Performance researches and improvements on heat regenerative adsorption refrigerator and heat pump. Energy Conversion and Management, 2001, 42(2):233-249. Times Cited: 35
[191] P. Zhang, M. Murakami, R.Z. Wang Transient measurement of temperature oscillation during noisy film boiling in superfluid helium II, Science in China, series E, 2001 44(1)27-32. Times Cited: 3
[192] R. Z. Wang. Adsorption refrigeration research in Shanghai Jiao Tong University, Renewable and Sustainable Energy Review, 2001, 5(1)1-37 Times Cited: 138
[193] T.F. Qu, R.Z. Wang, W. Wang. ¨Study on heat and mass recovery in adsorption refrigeration cycles〃. Applied Thermal Engineering, 2001,21(4):439-452. Times Cited: 30
[194] Dai, Y.J.; Wang, R.Z.; Zhang, H.F. Parameter analysis to improve rotary desiccant dehumidification using a mathematical model. International Journal of Thermal Sciences , 2001, 40( 4), 400-408 Times Cited: 39
[195] Y. J. Dai, R. Z. Wang, H. F. Zhang, Use of liquid desiccant cooling to improve the performance of vapor compression air conditioning, Applied Thermal Engineering, 2001, 21(12)1185-1202 Times Cited: 60
[196] A.O. Dieng, R.Z. Wang . Literature review on solar adsorption technologies for ice-making and air-conditioning purposes and recent developments in solar technology. Renewable and Sustainable Energy Reviews, 2001, 5(4): 313-342. Times Cited: 74
[197] P. Zhang, M. Murakami, R. Z. Wang. An experimental investigation of temperature and pressue oscillation in the boiling of liquid helium. Experimental Heat Transfer, (2001), V14(4) 313 Times Cited: 5
[198] R.Z. Wang. Performance improvement of adsorption cooling by heat and mass recovery operation. International Journal of Refrigeration, 2001, 24(7): 602-611. Times Cited: 109
[199] Y.B. Gui, R.Z. Wang. Practical three-heat-reservoir model on heat-regenerative adsorption air-conditioning system. Applied Thermal Engineering, 2001, 21(16):1643-1656 . Times Cited: 8
[200] P. Zhang, M. Murakami, R. Z. Wang. Study of liquid column oscillation and vapor bubble oscillation resulting from film boiling in He II. Journal of Physics D: Applied Physics, (2001) V34(22) 3296 Times Cited: 1
[201] P. Zhang, M. Murakami, R. Z. Wang. Oscillatory phenomena related to noisy film boiling in superfluid helium II. Physics Letters A, 2000, 264:492-496. Times Cited: 0
[202] R.Z. Wang, M. Li, Y.X. Xu, J. Y. Wu. An energy efficient hybrid system of solar powered water heater and adsorption ice maker. Solar Energy, 2000, 68(2):189-195. Times Cited: 70
[203] J.Y. Wu, R. Z. Wang, Y.X.Xu. Dynamic simulation and experiments of a heat regenerative adsorption heat pump. Energy Conversion and Management, 2000, 41:1007-1018. Times Cited: 16
[204] P. Zhang, M. Murakami, R.Z. Wang. Transient temperature measurement of noisy film boiling and silent film boiling in He II, Cryogenics, 2000, 40:241-244. Times Cited: 70
[205] R. Z. Wang, J. Y. Wu, and Y. X. Xu. ¨A Continuous Heat Regenerative Adsorption Refrigerator Using Spiral Plate Heat Exchanger as Adsorbers: Improvements〃, ASME Journal of Solar Energy Engineering, 1999120(1):14-19. Times Cited: 1
[206] R.Z. Wang, Q. B. Wang. ¨Adsorption mechanism and improvement of adsorption equation for adsorption refrigeration pairs〃. International Journal of Energy Research, 1999. 23(10):887-898. Times Cited: 24
[207] P. Zhang, M. Murakami, R.Z. Wang, H. Inaba. "Study of film boiling in He II by pressure and temperature oscillation measurements". Cryogenics, 1999, 39(7): 609-615. Times Cited: 14
[208] R. Z. Wang, P. Zhang, 1998, ¨Pressure effect on the heat transfer in bath of superfluid helium〃, Cryogenics, 38(7):701-706. Times Cited: 4
[209] R. Z. Wang, H. Kobayashi, 1998, ¨Two step phase transition model of heat transfer in bath of subcooled superfluid helium〃, Cryogenics, 38(10):1035-1038. Times Cited: 1
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[215] WANG Ruzhu, Wu Jingyi, 1996, "Specific heat and thermal conductivity of a single crystal-like Bi2Sr2CaCu2O8+x", Advances in Cryogenic Engineering, Vol.42.535-541. Times Cited: 1
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